4.8 Article

A dendrite-eating separator for high-areal-capacity lithium-metal batteries

期刊

ENERGY STORAGE MATERIALS
卷 31, 期 -, 页码 181-186

出版社

ELSEVIER
DOI: 10.1016/j.ensm.2020.06.037

关键词

Lithium protection; Dendrite eater; Silicide-enriched SEI; Lithium anode; Lithium-metal battery

资金

  1. National Natural Science Foundation of China [51802225, 51602221]
  2. Shanghai Municipal Natural Science Foundation [16ZR1438400]
  3. National Key R&D Program of China [2016YFB0100302]
  4. State Key Laboratory of Materials Processing and Die & Mould Technology, Huazhong University of Science and Technology [P2020-001]

向作者/读者索取更多资源

To realize the practical applications of the next-generation lithium-metal batteries (LMBs), it is critical to developing high-areal-capacity lithium (Li) anodes with high reversibility and dendrite-free electrodeposition. Herein, we demonstrate a dendrite-eating strategy to enable high-areal-capacity LMBs by introducing silicon (Si) coating onto the polypropylene (PP) separator. The Si layer is found to be effective in stabilizing the Li electrodeposition and reduce the Li loss. The in-situ optical cell observation and electrochemical characterizations reveal that the dendrite-eating coating serves as both a Li absorbant to suppress (eat) the dendrites growth and a backup Li reservoir to replenish the Li loss. With this dendrite-eating separator, the Li consumption during cycling is reduced by 66%, and the cyclability and reversibility of the Li anodes are also significantly improved, leading to a prolonged stripping/plating lifetime for >1000 h and high Coulombic efficiency (CE) of >97.6% in carbonate electrolyte. Coupled with an industry-level high-loading LiFePO4 cathode (20.0 mg cm(-2)), a thin Si coating of only 0.2 mg cm(-2) on the separator remarkably improves the full-cell cycling stability.

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